VTT Technical Research Center of Finland, FIN-02044 VTT Espoo, Finland.
Proc Natl Acad Sci U S A. 2011 Apr 5;108(14):5891-6. doi: 10.1073/pnas.1103010108. Epub 2011 Mar 21.
The phytohormones jasmonates (JAs) constitute an important class of elicitors for many plant secondary metabolic pathways. However, JAs do not act independently but operate in complex networks with crosstalk to several other phytohormonal signaling pathways. Here, crosstalk was detected between the JA and abscisic acid (ABA) signaling pathways in the regulation of tobacco (Nicotiana tabacum) alkaloid biosynthesis. A tobacco gene from the PYR/PYL/RCAR family, NtPYL4, the expression of which is regulated by JAs, was found to encode a functional ABA receptor. NtPYL4 inhibited the type-2C protein phosphatases known to be key negative regulators of ABA signaling in an ABA-dependent manner. Overexpression of NtPYL4 in tobacco hairy roots caused a reprogramming of the cellular metabolism that resulted in a decreased alkaloid accumulation and conferred ABA sensitivity to the production of alkaloids. In contrast, the alkaloid biosynthetic pathway was not responsive to ABA in control tobacco roots. Functional analysis of the Arabidopsis (Arabidopsis thaliana) homologs of NtPYL4, PYL4 and PYL5, indicated that also in Arabidopsis altered PYL expression affected the JA response, both in terms of biomass and anthocyanin production. These findings define a connection between a component of the core ABA signaling pathway and the JA responses and contribute to the understanding of the role of JAs in balancing tradeoffs between growth and defense.
植物激素茉莉酸(JAs)构成了许多植物次生代谢途径的重要诱导剂。然而,JAs 并非独立作用,而是与其他几种植物激素信号通路相互作用,形成复杂的网络。在这里,我们在烟草(Nicotiana tabacum)生物碱生物合成的调控中检测到了 JA 和脱落酸(ABA)信号通路之间的串扰。发现一个来自拟南芥 PYR/PYL/RCAR 家族的烟草基因 NtPYL4,其表达受 JAs 调控,编码一个功能性的 ABA 受体。NtPYL4 以 ABA 依赖的方式抑制已知是 ABA 信号的关键负调控因子的 2C 型蛋白磷酸酶。在烟草毛状根中过表达 NtPYL4 导致细胞代谢重新编程,导致生物碱积累减少,并使生物碱的产生对 ABA 敏感。相比之下,ABA 在对照烟草根中不会引起生物碱生物合成途径的响应。对 NtPYL4、PYL4 和 PYL5 的拟南芥同源物的功能分析表明,在拟南芥中,改变 PYL 的表达也会影响 JA 反应,无论是在生物量还是花青素的产生方面。这些发现定义了核心 ABA 信号通路的一个组成部分与 JA 反应之间的联系,并有助于理解 JAs 在平衡生长和防御之间的权衡中的作用。